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A magnetorheological damper capable of force and displacement sensing

机译:能够感应力和位移的磁流变阻尼器

摘要

A magnetorheological (MR) damper with embedded force and displacement sensors is devised to facilitate closed-loop structural vibration control. A piezoelectric force sensor and a linear variable differential transformer (LVDT) have been integrated with a conventional MR damping device. The piezoelectric sensor is used to sense the damping force produced by the damper, while the LVDT is employed to measure the displacement of the vibrating structure at the damper location and the movement of the damper piston. Calibration of the piezoelectric force sensor is conducted through force-controlled tests with sinusoidal force excitations of different amplitudes and frequencies. The sensing and damping performances of the devised MR damper are evaluated under displacement-controlled excitations, with different current inputs being commanded to the damper. The experimental results demonstrate reliable displacement/force sensing and controllable damping capabilities of the devised damper. The sensing-while-damping function of the damper hence offers its potential for real-time feedback structural vibration control.
机译:具有嵌入式力和位移传感器的磁流变(MR)阻尼器设计用于促进闭环结构振动控制。压电力传感器和线性可变差动变压器(LVDT)已与常规MR阻尼设备集成在一起。压电传感器用于检测阻尼器产生的阻尼力,而LVDT用于测量阻尼器位置的振动结构的位移以及阻尼器活塞的运动。压电力传感器的校准是通过力控制测试进行的,该测试采用不同幅度和频率的正弦力激励。在位移控制的激励下评估设计的MR阻尼器的传感和阻尼性能,并向阻尼器发出不同的电流输入指令。实验结果表明,所设计的减振器具有可靠的位移/力感应和可控的减震能力。因此,阻尼器的边阻尼感测功能为实时反馈结构振动控制提供了潜力。

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